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Cross-correlation of instantaneous phase increments in pressure-flow fluctuations: Applications to cerebral autoregulation

机译:压力-流量波动中瞬时相位增量的互相关:在脑自动调节中的应用

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摘要

We investigate the relationship between the blood flow velocities (BFV) in the middle cerebral arteries and beat-to-beat blood pressure (BP) recorded from a finger in healthy and post-stroke subjects during the quasisteady state after perturbation for four different physiologic conditions: supine rest, head-up tilt, hyperventilation, and CO2 rebreathing in upright position. To evaluate whether instantaneous BP changes in the steady state are coupled with instantaneous changes in the BFV, we compare dynamical patterns in the instantaneous phases of these signals, obtained from the Hilbert transform, as a function of time. We find that in post-stroke subjects the instantaneous phase increments of BP and BFV exhibit well-pronounced patterns that remain stable in time for all four physiologic conditions, while in healthy subjects these patterns are different, less pronounced, and more variable. We propose an approach based on the cross-correlation of the instantaneous phase increments to quantify the coupling between BP and BFV signals. We find that the maximum correlation strength is different for the two groups and for the different conditions. For healthy subjects the amplitude of the cross-correlation between the instantaneous phase increments of BP and BFV is small and attenuates within 3−5 heartbeats. In contrast, for post-stroke subjects, this amplitude is significantly larger and cross-correlations persist up to 20 heartbeats. Further, we show that the instantaneous phase increments of BP and BFV are cross-correlated even within a single heartbeat cycle. We compare the results of our approach with three complementary methods: direct BP-BFV cross-correlation, transfer function analysis, and phase synchronization analysis. Our findings provide insight into the mechanism of cerebral vascular control in healthy subjects, suggesting that this control mechanism may involve rapid adjustments (within a heartbeat) of the cerebral vessels, so that BFV remains steady in response to changes in peripheral BP.
机译:我们调查了健康和中风后受试者在四种不同生理状况扰动后的准稳定状态下大脑中动脉的血流速度(BFV)与从手指记录的逐搏血压(BP)之间的关系:仰卧休息,抬头倾斜,换气过度,并在直立位置重新呼吸CO2。为了评估稳态下的瞬时BP变化是否与BFV的瞬时变化耦合,我们比较了从希尔伯特变换获得的这些信号的瞬时相位随时间的动态模式。我们发现,在中风后受试者中,BP和BFV的瞬时相位增量表现出明显的模式,在所有四个生理条件下均保持时间稳定,而在健康受试者中,这些模式是不同的,不那么明显且变化更大。我们提出一种基于瞬时相位增量互相关的方法来量化BP和BFV信号之间的耦合。我们发现两组的最大相关强度和条件不同。对于健康受试者,BP和BFV的瞬时相位增量之间的互相关幅度很小,并且会在3-5个心跳内衰减。相反,对于中风后受试者,该幅度明显更大,并且互相关持续多达20个心跳。此外,我们表明,即使在单个心跳周期内,BP和BFV的瞬时相位增量也是互相关的。我们将我们的方法的结果与三种互补方法进行比较:直接BP-BFV互相关,传递函数分析和相位同步分析。我们的发现为健康受试者的脑血管控制机制提供了见识,表明该控制机制可能涉及脑血管的快速调节(在心跳内),从而使BFV保持稳定以响应周围BP的变化。

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